Department of Physics, KTH Royal Institute of Technology, 106 91 Stockholm, Sweden.
Phys Rev Lett. 2019 Jan 18;122(2):020201. doi: 10.1103/PhysRevLett.122.020201.
We propose and study a conformal field theory (CFT) model with random position-dependent velocity that, as we argue, naturally emerges as an effective description of heat transport in one-dimensional quantum many-body systems with certain static random impurities. We present exact analytical results that elucidate how purely ballistic heat waves in standard CFT can acquire normal and anomalous diffusive contributions due to our impurities. Our results include impurity-averaged Green's functions describing the time evolution of the energy density and the heat current, and an explicit formula for the thermal conductivity that, in addition to a universal Drude peak, has a nontrivial real regular contribution that depends on details of the impurities.
我们提出并研究了一个具有随机位置相关速度的共形场论(CFT)模型,我们认为,该模型自然地成为了具有某些静态随机杂质的一维量子多体系统中热输运的有效描述。我们提出了精确的解析结果,阐明了标准 CFT 中的纯弹道热波如何由于我们的杂质而获得正常和反常扩散贡献。我们的结果包括描述能量密度和热流随时间演化的杂质平均格林函数,以及热导率的显式公式,除了普遍的德劳德峰之外,还有一个与杂质细节有关的非平凡实正则贡献。